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CardioNext®

CardioNext is a targeted panel for patients with inherited cardiomyopathies and arrhythmias, and other inherited cardiovascular conditions. Given the genetic and clinical overlap between these conditions, one comprehensive inherited cardiovascular test may be the most effective way of identifying at-risk individuals, or confirming a diagnosis.

CardioNext by Ambry Genetics | Genetic test for inherited cardiovascular diseases

CardioNext is a targeted panel for patients with inherited cardiomyopathies and arrhythmias, and other inherited cardiovascular conditions. Given the genetic and clinical overlap between these conditions, one comprehensive inherited cardiovascular test may be the most effective way of identifying at-risk individuals, or confirming a diagnosis.

CardioNext is a comprehensive analysis of 92 genes associated with inherited cardiomyopathies, arrhythmias, and other cardiovascular conditions. Genomic deoxyribonucleic acid (gDNA) is isolated from the patient’s specimen using a standardized methodology and quantified. Sequence enrichment of the targeted coding exons and adjacent intronic nucleotides is carried out by a bait-capture methodology using long biotinylated oligonucleotide probes, and is followed by polymerase chain reaction (PCR) and Next-Generation sequencing. Additional Sanger sequencing is performed for any regions missing or with insufficient read depth coverage for reliable heterozygous variant detection. Potentially homozygous variants, variants in regions complicated by pseudogene interference, and variant calls not satisfying depth of coverage and variant allele frequency quality thresholds are verified by Sanger sequencing. This assay targets all coding domains, and well into the flanking 5’ and 3’ ends of all the introns and untranslated regions. Gross deletion/duplication analysis is performed for all genes using a custom pipeline based on read-depth from NGS data followed by a confirmatory orthogonal method, as needed. For TTN, only truncating variants are routinely reported.1 Exon-level resolution may not be achieved for every gene.

1. Morales et al. Circ Genom Precis Med. 2020 Apr; 12(2).

Genes analyzed
Code
Test Name
Turnaround
Genes
8911
CardioNext®
14-21 days
92 Genes
CardioNext®
92 Genes
ABCC9
ACTC1
ACTN2
AKAP9
ALMS1
ALPK3
ANK2
ANKRD1
BAG3
CACNA1C
CACNA2D1
CACNB2
CALM1
CALM2
CALM3
CASQ2
CAV3
CRYAB
CSRP3
DES
DMD
DOLK
DSC2
DSG2
DSP
EMD
EYA4
FHL1
FKRP
FKTN
FLNC
GATAD1
GLA
GPD1L
HCN4
JPH2
JUP
KCND3
KCNE1
KCNE2
KCNE3
KCNH2
KCNJ2
KCNJ5
KCNJ8
KCNQ1
LAMA4
LAMP2
LDB3
LMNA
MYBPC3
MYH6
MYH7
MYL2
MYL3
MYOZ2
MYPN
NEXN
NKX2-5
PKP2
PLN
PRKAG2
PTPN11
RAF1
RBM20
RIT1
RYR2
SCN10A
SCN1B
SCN2B
SCN3B
SCN4B
SCN5A
SNTA1
SOS1
TAZ
TBX20
TBX5
TCAP
TECRL
TGFB3
TMEM43
TNNC1
TNNI3
TNNT2
TPM1
TRDN
TRPM4
TTN
TTR
TXNRD2
VCL
Letter of Medical Necessity
ARVCNext
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Why Is This Important?

Knowing if your patient has a hereditary cardiovascular disorder can help you determine their future cardiovascular disease risks and guide your medical management recommendations. Key benefits include:

  1. Clarify diagnosis and risk for sudden cardiac arrest
  2. Target medical management and prevention of cardiac arrest and other complications
  3. Adjust management in those with cardiomyopathy due to a specific cardiac genotype, or underlying conditions like Duchenne muscular dystrophy and Danon disease
  4. May identify the cause of a sudden unexplained death after a normal autopsy
  5. Offer family members genetic testing (for a familial mutation) and implement medical surveillance to only those that need it
  6. Reduce healthcare costs, resources, and anxiety for families
Mutation Detection Rate
>99%
CardioNext test
is designed and validated to be capable of detecting the described mutations in the genes represented on the tests (analytical sensitivity). The clinical sensitivity of the CardioNext test may vary widely according to the specific clinical and family history.*

Test Description

CardioNext is a comprehensive analysis of 92 genes associated with inherited cardiomyopathies, arrhythmias, and other cardiovascular conditions. Genomic deoxyribonucleic acid (gDNA) is isolated from the patient’s specimen using a standardized methodology and quantified. Sequence enrichment of the targeted coding exons and adjacent intronic nucleotides is carried out by a bait-capture methodology using long biotinylated oligonucleotide probes, and is followed by polymerase chain reaction (PCR) and Next-Generation sequencing. Additional Sanger sequencing is performed for any regions missing or with insufficient read depth coverage for reliable heterozygous variant detection. Potentially homozygous variants, variants in regions complicated by pseudogene interference, and variant calls not satisfying depth of coverage and variant allele frequency quality thresholds are verified by Sanger sequencing. This assay targets all coding domains, and well into the flanking 5’ and 3’ ends of all the introns and untranslated regions. Gross deletion/duplication analysis is performed using a custom pipeline based on read-depth from NGS data followed by a confirmatory orthogonal method, as needed. For TTN, only truncating variants are routinely reported.1 Exon-level resolution may not be achieved for every gene.

1. Morales et alCirc Genom Precis Med. 2020 Apr; 12(2).